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Ductility and moment redistribution capacity of multi-span T-section concrete beams reinforced with GFRP bars

机译:GFRP筋加固多跨T型截面混凝土梁的延性和弯矩再分配能力

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Glass fibre reinforced polymer (GFRP) bars are being increasingly used to reinforce concrete members as an alternative to steel, particularly in harsh environments, owing to their main advantages that include high strength, low self-weight, electromagnetic transparency and non-corrodibility. However, besides being relatively expensive, GFRP bars have low elasticity modulus and exhibit linear elastic behaviour until failure, thereby providing no contribution to structural members' ductility. This paper presents experimental and numerical investigations about the flexural behaviour of continuous concrete beams reinforced with GFRP bars, in particular on their capacity to redistribute internal forces. Small-scale flexural tests were carried out on 7 two-span beams with T cross-section: the main parameters analysed were the GFRP reinforcement ratio and the confinement level in critical zones of the beams, namely at the central support. The behaviour of the beams was analysed and compared in terms of serviceability and failure responses. The numerical investigations included the development of non-linear finite element (FE) models of all beams tested. After validation and calibration with the test data, a comprehensive parametric study was performed, in which the effects of (ⅰ) the span, (ⅱ) the cross-section geometry, and (ⅲ) the longitudinal GFRP reinforcement ratio on the moment redistribution capacity of full-scale continuous beams were evaluated. Results obtained show that moment redistribution occurs and that elastic analyses are considerably conservative. The confinement of the concrete at critical cross sections may be a good solution to enhance the plastic hinge ductility and consequently, the moment redistribution in GFRP reinforced concrete beams.
机译:由于玻璃纤维增​​强聚合物(GFRP)的主要优点包括高强度,低自重,电磁透明性和不腐蚀性,因此越来越多地被用来代替混凝土来加固混凝土构件,特别是在恶劣的环境中。然而,除了相对昂贵之外,GFRP棒还具有低的弹性模量并且表现出线性弹性行为直至破坏,从而对结构构件的延展性没有贡献。本文对玻璃纤维增​​强筋加固的连续混凝土梁的抗弯性能进行了实验和数值研究,特别是其重新分配内力的能力。在7个截面为T的两跨梁上进行了小型弯曲试验:分析的主要参数是GFRP增强比和梁关键区域即中心支撑处的约束水平。分析了梁的性能,并根据可维修性和故障响应进行了比较。数值研究包括开发所有受测梁的非线性有限元(FE)模型。在对测试数据进行验证和校准之后,进行了全面的参数研究,其中(ⅰ)跨度,(ⅱ)横截面几何形状和(ⅲ)纵向GFRP增强比对弯矩再分配能力的影响评估了全尺寸连续梁。获得的结果表明,发生了矩重新分布,并且弹性分析相当保守。将混凝土限制在关键横截面可能是提高塑料铰链延性以及因此提高GFRP加固混凝土梁弯矩的有效方法。

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